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Titlebook: Solids Under High-Pressure Shock Compression; Mechanics, Physics, Robert A. Graham Book 1993 Springer-Verlag New York, Inc. 1993 deformati

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书目名称Solids Under High-Pressure Shock Compression
副标题Mechanics, Physics,
编辑Robert A. Graham
视频video
丛书名称Shock Wave and High Pressure Phenomena
图书封面Titlebook: Solids Under High-Pressure Shock Compression; Mechanics, Physics,  Robert A. Graham Book 1993 Springer-Verlag New York, Inc. 1993 deformati
描述Since the 1950s shock compression research contributed greatly to scientific knowledge and industrial technology. As a result, for example, our understanding of meteorite impacts has substantially improved, and shock processes have become standard industrial methods in materials synthesis and processing. Investigations of shock-compressed matter involve physics,electrical engineering, solid mechanics, metallurgy, geophysics and materials science. The description of shock-compressed matter presented here, which is derived from physical and chemical observations, differs significantly from the classical descriptions derived from strictly mechanical characteristics. This volume, with over 900 references, provides an introduction for scientists and engineers interested in the present state of shock compression science.
出版日期Book 1993
关键词deformation; electrical engineering; geophysics; high-pressure; materials science; mechanics; metallurgy; m
版次1
doihttps://doi.org/10.1007/978-1-4613-9278-1
isbn_softcover978-1-4613-9280-4
isbn_ebook978-1-4613-9278-1Series ISSN 2197-9529 Series E-ISSN 2197-9537
issn_series 2197-9529
copyrightSpringer-Verlag New York, Inc. 1993
The information of publication is updating

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d by the atomic displacement which correspond to a stress intensity factor . based on linear elasticity with the initial elastic properties of the material. However, in our previous studies, it was shown that a very high strain occurs near the crack tip [1], and the initial mechanical properties are
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Robert A. Grahamd by the atomic displacement which correspond to a stress intensity factor . based on linear elasticity with the initial elastic properties of the material. However, in our previous studies, it was shown that a very high strain occurs near the crack tip [1], and the initial mechanical properties are
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Robert A. Grahamd by the atomic displacement which correspond to a stress intensity factor . based on linear elasticity with the initial elastic properties of the material. However, in our previous studies, it was shown that a very high strain occurs near the crack tip [1], and the initial mechanical properties are
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Robert A. Grahamwned international experts with an in-depth knowledge of the.A highly coveted objective of modern materials science is to optimize multiple coupled functionalities in the same single phase material and control the cross-response via multiple external fields. One important example of such multi-funct
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